Mr. Masoud Rabieian, Environmental Engineering, Young Scientist Award
Masoud Rabieian at Babol Noshirvani Uneversity of Technology, Iran
Masoud Rabieian is a Ph.D. student at Babol Noshirvani University of Technology (BNTU) in the Department of Civil and Environmental Engineering. He completed his master’s degree in Environmental Engineering at BNUT in 2019. His research focuses on wastewater treatment and soil remediation, particularly using advanced oxidation processes for contaminant degradation.
Profile:
Education:
Mr. Masoud Rabieian is currently pursuing a Ph.D. at Babol Noshirvani University of Technology (BNTU) in the Department of Civil and Environmental Engineering. He obtained his master’s degree in Environmental Engineering from BNUT in 2019.
Masoud Rabieian has a strong professional background in environmental engineering and research. He is currently a PhD student at Babol Noshirvani University of Technology (BNTU), specializing in civil and environmental engineering. His experience includes conducting research on wastewater treatment and soil remediation, with a focus on advanced oxidation processes (AOPs) for contaminant degradation. He has published several papers in reputable journals like Water Research and Environment, Development and Sustainability, showcasing his expertise in modeling and optimizing remediation processes. His work also extends to exploring innovative methods for water treatment, such as non-thermal plasma methods and hybrid photocatalytic-ozonation processes. Through his contributions to academia and research conferences, Mr. Rabieian has demonstrated a commitment to advancing environmental engineering practices and sustainability initiatives.
Research Interest:
Masoud Rabieian has extensive research experience in the field of environmental engineering, focusing on wastewater treatment and soil remediation. His research primarily revolves around the application of advanced oxidation processes (AOPs) for contaminant degradation, particularly targeting pollutants like polycyclic aromatic hydrocarbons (PAHs). He has worked on innovative techniques such as integrating soil washing with advanced oxidation processes in continuous systems to optimize water usage and scale up modeling. Additionally, Mr. Rabieian has contributed significantly to the development of mathematical models for leakage detection and localization in water distribution systems. His research also encompasses the optimization of hybrid photocatalytic-ozonation processes for offshore produced water treatment, showcasing a multidisciplinary approach to environmental challenges. Through his research endeavors, Mr. Rabieian has demonstrated a commitment to addressing critical environmental issues and advancing sustainable solutions in engineering.
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